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Pore solution alkali silica reaction

Nixon, P. J. et al. (1986) The effect of pfa with a high total alkali content on pore solution composition and alkali silica reaction. Magazine of Concrete Research 38,30-35. [Pg.319]

Membranes with extremely small pores ( < 2.5 nm diameter) can be made by pyrolysis of polymeric precursors or by modification methods listed above. Molecular sieve carbon or silica membranes with pore diameters of 1 nm have been made by controlled pyrolysis of certain thermoset polymers (e.g. Koresh, Jacob and Soffer 1983) or silicone rubbers (Lee and Khang 1986), respectively. There is, however, very little information in the published literature. Molecular sieve dimensions can also be obtained by modifying the pore system of an already formed membrane structure. It has been claimed that zeolitic membranes can be prepared by reaction of alumina membranes with silica and alkali followed by hydrothermal treatment (Suzuki 1987). Very small pores are also obtained by hydrolysis of organometallic silicium compounds in alumina membranes followed by heat treatment (Uhlhom, Keizer and Burggraaf 1989). Finally, oxides or metals can be precipitated or adsorbed from solutions or by gas phase deposition within the pores of an already formed membrane to modify the chemical nature of the membrane or to decrease the effective pore size. In the last case a high concentration of the precipitated material in the pore system is necessary. The above-mentioned methods have been reported very recently (1987-1989) and the results are not yet substantiated very well. [Pg.18]


See other pages where Pore solution alkali silica reaction is mentioned: [Pg.388]    [Pg.120]    [Pg.305]    [Pg.216]    [Pg.63]    [Pg.26]    [Pg.317]    [Pg.173]    [Pg.109]    [Pg.106]    [Pg.192]   
See also in sourсe #XX -- [ Pg.397 , Pg.399 , Pg.404 , Pg.411 , Pg.412 ]




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